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The Experiment Practical Design of Marine Auxiliary Engine Monitoring and Control System Ruddianto Ruddianto; Anggara Trisna Nugraha; Dwi Sasmita Aji Pambudi; Agung Prasetyo Utomo; Mahasin Maulana Ahmad; Mayda Zita Aliem Tiwana; Alwy Muhammad Ravi
Indonesian Journal of Electronics, Electromedical Engineering, and Medical Informatics Vol 3 No 4 (2021): November
Publisher : Department of electromedical engineering, Health Polytechnic of Surabaya, Ministry of Health Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35882/ijeeemi.v3i4.4

Abstract

Maintaining the quality of transportation services and reducing operational costs are some of the problems in shipping companies. This problem can be solved by several solutions. One of them is a reliable machine alarm monitoring and operation system. This study aims to provide a practical design of the ship's auxiliary engine start-stop control system and alarm system. This study uses an experimental method with a descriptive explanation of the observations. The test results show that this system is able to provide a simple, inexpensive, and efficient engine alarm system design to develop this technology for shipping companies. The PLC used is suitable for controlling this system because of its fast response. In addition, the utilized HMI can communicate efficiently with the monitoring system showing the machine parameter interface directly. Direct application of the system has been created provides technology development solutions for monitoring and controlling systems auxiliary machines for shipping companies to reduce operational cost
Design of Charger Controller on Wind Energy Power Plant With Arduino Uno Based on Pi Controller Anggara Trisna Nugraha; Dwi Sasmita Aji Pambudi; Agung Prasetyo Utomo; Dadang Priyambodo
Indonesian Journal of Electronics, Electromedical Engineering, and Medical Informatics Vol 3 No 4 (2021): November
Publisher : Department of electromedical engineering, Health Polytechnic of Surabaya, Ministry of Health Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

Technological developments are increasing every day. Where most human activities do not escape the use of electrical energy. The increase in world fuel oil and its scarcity has led to many new innovations, one of which is the use of renewable energy. The most widely used renewable energy is solar, wind and hydro energy. To support the effectiveness of the generator, a charger controller is needed to maintain battery performance. In this accumulator the maximum voltage required to charge is 14.4 Volts. The problem that arises is how the voltage generated from the generator does not match the voltage required in the battery charging process. From this problem, a charger controller with a buck converter circuit with the PI method was made to stabilize the output voltage for charging. The aim o this study is to make a battery charger that can stabilize the level voltage of the battery charger. From the research, it was found that the efficiency value of the charger controller is 83-95% and the average error percentage is 1.373%. For this reason, it can be concluded that the charge controller has good performance in terms of efficiency and percentage of output voltage error. The charger controller is expected to maintain battery performance and lifetime of the battery.
KONTROL KECEPATAN MOTOR INDUKSI TIGA FASA MENGGUNAKAN TEGANGAN DAN FREKUENSI DENGAN MODULASI VEKTOR RUANG Dwi Sasmita Aji Pambudi; M. Sarwoko M. Sarwoko; Ekki Kurniawan
TEKTRIKA Vol 1 No 1 (2016)
Publisher : Telkom University

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.25124/tektrika.v1i1.250

Abstract

Teknik pengontrolan motor induksi tiga fasa yang digunakan pada penelitian ini adalah kontrol tegangan dan frekuensi (Volt/Hertz). Metode kontrol tersebut, mampu menjaga besarnya fluks dan nilai torsi maksimum agar tetap konstan. Metode Modulasi Ruang Vektor (Space Vector Modulation) ditanamkan pada mikrokontroler STM32F100 untuk pembangkitan pulsa PWM inverter sesuai dengan urutan pensakelaran inverter tiga fasa sumber tegangan (VSI). Lebar pulsa dari tiap pulsa PWM ditentukan oleh pengaturan variabel waktu dalam SVM. Kontrol sistem dilakukan secara loop terbuka dengan mengubahubah nilai set point kecepatan yaitu mengatur nilai frekuensi yang secara bersamaan mengatur nilai tegangan sesuai nilai indeks modulasi. Penggunaan kontrol skalar (Volt/Hertz) mampu menahan lonjakan arus mula motor saat motor mulai dijalankan secara langsung, yaitu besarnya arus mula motor sebesar 3,12 A dapat ditekan menjadi ≈ 2,9 A. Nilai rata-rata error pengukuran pada pengujian kecepatan motor sesuai dengan nilai faktor slip yaitu sebesar 6%. Nilai kecepatan motor yang dihasilkan memiliki hubungan linier dengan nilai frekuensi yang diberikan. Semakin kecil nilai tegangan keluaran inverter, maka semakin besar nilai THD dan semakin besar harmonisa yang dihasilkan oleh motor yang menyebabkan motor tidak dapat bekerja secara optimal. Implementasi dari sistem kontrol memberikan rata-rata nilai error 1,935%.Kata Kunci: motor induksi, Volt/Hertz, STM32F100, inverter, SVM
Battery Charger Design with PI Control Based on Arduino Uno R3 Agung Prasetyo Utomo; Anggara Trisna Nugraha Angga; Dwi Sasmita Aji Pambudi; Dadang Priyambodo
TEKNOLOGI DITERAPKAN DAN JURNAL SAINS KOMPUTER Vol 4 No 2 (2021): December
Publisher : Unusa Press

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33086/atcsj.v4i2.2398

Abstract

In line with the increase in the electrification ratio target to 100% in 2025, the electricity demand is projected to increase more than 7 times to 1,611 TWh in 2050. the share reached 58% or about 50 GW. On the other hand, the current energy diversification carried out by the government is directed at the utilization of renewable energy that exists in nature. One of the important components in this power plant is the battery. This is because the battery functions as a store of energy generated from the vertical wind turbine. After use, the battery needs to be recharged. The process of recharging the battery that is not suitable can cause a decrease in battery performance. Therefore, in the process of charging this battery, a safe battery charging system is needed for the battery to maintain battery performance and extend battery lifetime. This battery charging system uses a PI control system. From the research that has been done, it was found that. From the research that has been done, it is found that the output voltage value of the battery charger that is made has an average error percentage of 1.373% and the power output efficiency of the battery charger is 83-95%.
Main Engine Water Cooling Failure Monitoring and Detection on Ships using Interface Modbus Communication Dwi Sasmita Aji Pambudi; Ruddianto; Anggara Trisna Nugraha Angga; Agung Prasetyo Utomo; Mahasin Maulana Ahmad; Mayda Zita Aliem Tiwana; Alwy Muhammad Ravi
TEKNOLOGI DITERAPKAN DAN JURNAL SAINS KOMPUTER Vol 4 No 2 (2021): December
Publisher : Unusa Press

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33086/atcsj.v4i2.2508

Abstract

Main engine failure will damage engine systems, reduce navigation safety, and cause serious marine accidents. The cooling system is very important to prevent the engine's mechanical efficiency from deteriorating and engine failure due to overheating. Therefore, a monitoring and error detection system is needed. The system is based on the Modbus RS485 communication and interface. The collection equipment uses components from the 7S-50MC diesel engine. PLC is used as processing equipment and Logic Panel Autonics S070 is used as an interface. Through these tests, error detection in this study can provide an indication of an error when an abnormal situation occurs. In addition, data monitoring and system fault indication can be displayed on the interface. Testing of the system proved that it complies with the Indonesian Shipping Bureau (BKI) regulations on engine warning systems. The research developed can form the basis of more complex and reliable monitoring and fault detection system for applications on ships.
Studi Pendahuluan Sistem Akuakultur Cerdas Berbasis Online Monitoring Terhadap Unjuk Kerja Kincir Aerasi Muh. Anis Mustaghfirin; Priyambodo Nur Ardi Nugroho; Dwi Sasmita Aji Pambudi; Eky Novianarenti
Infotekmesin Vol 13 No 2 (2022): Infotekmesin: Juli, 2022
Publisher : P3M Politeknik Negeri Cilacap

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35970/infotekmesin.v13i2.1534

Abstract

This article discusses a preliminary study of developing a paddlewheel aerator for shrimp ponds using an integrated intelligent aquaculture system to support intensification. Two paddlewheel aerators with different phases have been successfully installed. The test was carried out on two different types of motors, which were intended to comprehend the performance of every motor on a paddlewheel aerator. The ratio of the speed values for a single-phase motor was 102 rpm and for a 3-phase motor was 110.3 rpm. The data from the performance observation of the aeration wheel motor can be viewed via a smartphone using a website application. The data displayed from the observations are in the form of data on voltage, current, frequency, power, power factor, and the power generated by the pinwheel motor. The test results show the performance of the aeration wheel motor that works under normal conditions with an average measurement error of 0.23%, below the acceptable error limit of 0.5%. This research forms the basis for a smart aquaculture system that can be developed domestically to support local industries in Indonesia.
Kajian Eksperimen Pengaruh Variasi Perubahan Sudut Kincir terhadap Kinerja Paddle Wheel Aerator Anis Mustaghfirin; Eky Novianarenti; Muhammad Abid Al Fatih; Priyambodo Nur Ardi Nugroho; Dwi Sasmita Aji Pambudi; Dyah Arum Wulandari
Infotekmesin Vol 14 No 1 (2023): Infotekmesin: Januari, 2023
Publisher : P3M Politeknik Negeri Cilacap

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35970/infotekmesin.v14i1.1652

Abstract

The main problem discussed in this study is the effort to improve the quality of shrimp pond water, especially the low dissolved oxygen levels by modifying the angle of the aerator wheel. The results showed that dissolved oxygen (DO) levels were very important in shrimp pond culture and that the paddle wheel aerator was a useful tool in intensive aquaculture systems because it could produce DO as needed. The study used a model designed using Solidworks software and tested at a scale of 1:10 with 3 variations of angles (15°, 35°, and 55°) at each wheel angle. The test results show that the angle variation affects the rotational speed and DO production, with the highest rotational speed and DO production achieved at an angle variation of 55°. However, the best parameters for the aerator were found at a variation of the wheel angle of 35° and a rotational speed of 300 rpm, because it produced the highest dissolved oxygen with relatively low power.
SISTEM MONITORING DAN KONTROL PADA TRANSFER PENGISIAN BAHAN BAKAR KAPAL X Dwi Sasmita Aji Pambudi
INOVTEK POLBENG Vol 14, No 1 (2024): INOVTEK VOL 14 NO 1
Publisher : POLITEKNIK NEGERI BENGKALIS

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35314/ip.v14i1.4238

Abstract

Teknologi maritim terus mengalami perkembangan seiring berjalannya waktu guna membuat sistem menjadi lebih efisien. Kontribusi dimulai dari pengembangan sistem pendidikan agar nantinya dapat memberikan kontribusi dalam kemajuan maritim. Penelitian ini dibuat untuk merancang sistem monitoring dan kontrol pada transfer bahan bakar menggunakan mikrokontroler Arduino Mega 2560. Arduino Mega 2560 sebagai pusat sistem monitoring pada penelitian ini. Sensor ACS712, sensor suhu DS18B20, dan voltage sensor digunakan untuk mengambil data pada pompa transfer selama sistem berjalan. Disertai adanya sensor level oil untuk membantu mengambil data volume dari tangki. Pada sistem ini Arduino Mega 2560 juga digunakan untuk kontrol pompa pada proses transfer bahan bakar. Adanya relay yang juga terhubung arduino untuk membantu dalam kontrol pompa. LCD digunakan untuk menampilkan data yang telah di terima oleh Arduino Mega 2560 dan dibuat untuk menampilkan hasil pada sistem monitoring pada penelitian ini. Adanya aktuator yang digunakan sebagai simbol isyarat guna sistem peringatan dan proteksi pada penelitian ini. Prosedur yang digunakan pada saat mengoperasikan modul panel ini mengacu pada peraturan prosedur bunkering yang dikeluarkan oleh ISGOTT (International Safety Guide for Oil Tankers and Terminals) yang berisi tentang prosedur yang terlebih dahulu harus dilakukan sebelum pengoprasian modul panel ini. Dilakukannya pengecekan suhu tangki sebelum proses transfer bahan bakar dan pengawasan secara rutin terhadap arus beserta tegangan pada pompa selama proses transfer bahan bakar. Berdasarkan dari hasil percobaan yang telah dilakukan, sistem monitoring dijalankan dan pompa akan terus mengisi tangki dengan selang waktu 17 menit sampai data yang didapatkan pada saat pembacaan volume dari potensio geser bernilai 100 akan secara otomatis memberikan perintah pada relay untuk mematikan pompa transfer. Sistem proteksi akan mengaktifkan alarm sebagai penanda apabila terjadi gangguan over current dengan batas arus diatas 5.3A dan overheat dengan batas suhu diatas 50°C
PERANCANGAN SMART PROTECTION PADA MOTOR KINCIR AERATOR TAMBAK UDANG MENGGUNAKAN LOGIKA FUZZY Nanda Dwi Pangestu; Muhammad Fikri Fathurrohman; Anggara Trisna Nugraha; Didik Sukoco; Dwi Sasmita Aji Pambudi
Jurnal 7 Samudra Vol. 9 No. 1 (2024): Jurnal 7 Samudra
Publisher : PPPM - POLITEKNIK PELAYARAN SURABAYA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.54992/7samudra.v9i1.129

Abstract

Pada impeller aerator diperlukan suatu alat untuk meminimalisir gangguan listrik, sehingga tidak terjadi kegagalan fasa. Jika input diproses, fase hilang, relai tidak dapat ditutup dan akan tetap terbuka. Ketika tidak ada kehilangan fase, relai akan ditutup. Kemudian pembacaan pada sensor PZEM004T, hasil pembacaan tersebut akan diproses oleh kontroler dengan cara peredupan, dan keluaran dari metode peredupan adalah sejenis noise elektrik, walaupun dengan tegangan over/under dan arus lebih, ketika gangguan ini terjadi, NO pada rangkaian kontrol akan terbuka dan relay akan terbuka dan indikator akan menyala kemudian lihat lagi, jika tidak terjadi tegangan over/under dan arus over maka power akan langsung ditransfer ke beban.
PERANCANGAN DAN IMPLEMENTASI HYBRID PANEL SURYA DAN TURBIN ANGIN TERINTEGRASI MULTI INPUT CONVERTER DC/DC DENGAN FUZZY LOGIC PADA SISTEM AERATOR TAMBAK UDANG Moh. Nur Khojim; Fortunaviaza Habib Ainudin; Yuning Widiarti; Anggara Trisna Nugraha; Dwi Sasmita Aji Pambudi
Jurnal 7 Samudra Vol. 8 No. 1 (2023): Jurnal 7 Samudra
Publisher : PPPM - POLITEKNIK PELAYARAN SURABAYA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.54992/7samudra.v8i1.134

Abstract

Indonesia memiliki potensi sumber daya alam yang cukup besar. salah satunya sumber daya alam laut. satu diantaranya yang menjadi komoditas ekspor dari indonesia adalah udang. salah satu proses yang paling penting dalam produksi udang pada tambak udang ialah sebuah sistem Aerasi, dimana proses pemberian dan peningkatan kualitas oksigen terlaut dalam air, karena udang sangat membutuhkan kualitas air yang memiliki konsentrasi oksigen terlalut yang baik. guna memenuhi hal berikut petani udang mengunakan alat Aerator, sebuah alat yang berbentuk kincir air yang mengapung dipermukaan air terdapat turbin yang digerakan oleh motor listrik. Maka proses Aerasi tersebut membutuhkan pasokan listrik, oleh karena itu energy alternative bias diterapkan untuk tercapainya green energy. maksimal energy alternative dengan system Hybrid Solar Panel dan Turbin angin untuk menjaga output daya yang lebih maksimal. Dengan bantuan device Multi Input Converter DC/DC yang berfungsi untuk mengatur dua input dari PV dan WT untuk menjaga tegangan keluar yang konstan. tersebut bisa menghasilkan outputan daya yang stabil untuk melakukan proses charging baterai dimana energy listrik disimpan terlebih dahulu sebelum dikonsumsi oleh beban motor listrik aerator.